
Structural biology of epigenetic targets
Structural biology of epigenetic targets
Chromatin structure is a major barrier to all nuclear processes and its modulation is essential for correct cell growth. There is now clear evidence that defects in chromatin modulation are responsible for a wide range of diseases, including cancer. Epigenetic modifications have a large impact on chromatin structure, acting in synergy with ATP-dependent remodelers, histone variants and histone chaperones to regulate nuclear mechanisms. By combining state-of-the-art biochemical and crystallographic techniques, we aim to understand chromatin remodeling at the molecular level. Three main targets are the current focus of our research: protein arginine methyltransferases (PRMTs), histone chaperones and histone deacetylases (HDACs). Furthermore, we are also developing structurebased rational approaches to characterize small molecule modulators of the biological activities of our targets since they are frequently involved in human diseases. Our team also participates in collaborative research on several related projects which require our specific expertise. Present collaborations concern the structural studies of complexes of cancer-related targets such as the Translationally Controlled Tumor Protein (TCTP) and the mRNA of human histone H4.
Members
Researchers
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Publications
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1999
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Aminoacyl-tRNA synthetases: A new image for a classical family
- Susan Martinis
- Pierre Plateau
- Jean Cavarelli
- Catherine Florentz
Biochimie ; Volume: 81 ; Page: 683-700
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Active site mapping of yeast aspartyl-tRNA synthetase by in vivo selection of enzyme mutations lethal for cell growth
- Laurent Ador
- Alain Camasses
- Philippe Erbs
- Jean Cavarelli
- Dino Moras
- Jean Gangloff
- Gilbert Eriani
Journal of Molecular Biology ; Volume: 288 ; Page: 231-242
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Crystallogenesis studies on yeast aspartyl-tRNA synthetase: use of phase diagram to improve crystal quality
- Claude Sauter
- Bernard Lorber
- Daniel Kern
- Jean Cavarelli
- Dino Moras
- Richard Giegé
Acta crystallographica Section D : Structural biology [1993-...] ; Volume: 55 ; Page: 149-156
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1998
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L-Arginine recognition by yeast arginyl-tRNA synthetase
- Jean Cavarelli
- Bénédicte Delagoutte
- Gilbert Eriani
- Jean Gangloff
- Dino Moras
EMBO Journal ; Volume: 17 ; Page: 5438-5448
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1997
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The structure of Staphylococcus aureus epidermolytic toxin A, an atypic serine protease, at 1.7 Å resolution
- Jean Cavarelli
- Gilles Prévost
- William Bourguet
- Luc Moulinier
- Bernard Chevrier
- Bénédicte Delagoutte
- Alexandrine Bilwes
- Lionel Mourey
- Samer Rifai
- Yves Piémont
- Dino Moras
Structure ; Volume: 5 ; Page: 813-824
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